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    • 3. 发明申请
    • METHOD AND DEVICE FOR PRODUCING FORMATTED PACKAGINGS
    • 方法和设备进行用于产生格式化的包总数
    • WO2010102963A3
    • 2010-12-02
    • PCT/EP2010052868
    • 2010-03-05
    • HOCHLAND NATEC GMBHBIGGEL ANDREASHOFER STEFAN
    • BIGGEL ANDREASHOFER STEFAN
    • B65B35/24B65B35/44B65G21/14B65G47/31
    • B65G57/28B65B25/068B65B35/246B65B35/44B65B35/50B65G47/30
    • The invention relates to a method and device for producing formatted packagings (29) containing a defined number of adjacent individual pieces (10) having the same format comprising, in particular, food products. The individual pieces (10) are transported in a lying manner along the conveyor paths on conveyor belts and are arranged on a first conveyor belt (B1) at an equal distance and are guided at a speed (vB1) to a second conveyor belt (B2, B3) which forms a buffer section and which is connected in the direction of transportation (A) to the first conveyor belt (B1). The individual pieces (10) are stacked on top of each other at the beginning of the second conveyor belt (B2, B3) to form a buffer stack (21). Said buffer stack (21) is guided along the second conveyor belt (B2, B3) at a speed vB2 which is slower than vB1. The packaging (29) at the end of the second conveyor belt (B2, B3) are separated from the buffer stack (21) by means a discharge conveyor belt (B4), the speed thereof vB4 during the separation process from the buffer stack (21) being faster than vB2. Transition points (18, 24) located between the conveyor belts (B1, B2, B3, B4) are displaced with respect to the direction of transportation (A) when stacking and/or separating individual pieces (10)
    • 方法和用于产生格式化的总包含一个限定连续的相同尺寸的特别是食物产品的数装置(29)形成单独的片(10),所述单个的块(10)被输送传送带上沿输送线卧,其中所述单独的片(10)首先在 传送带(B1)在一相互距离,并以速度VB1一个缓冲器部分形成第二传送带(B2,B3)被提供,这是在输送方向上的第一传送带(B1)的(a)连接,其中,所述单独的块(10)在开始时 第二传送带(B2,B3),以相邻的单个小片的一个缓冲叠层(21)(10)被累积,以速度VB2小于的Vb1在第二传送带的缓冲叠层(21)(B2,B3)被输送时, 其中在第二传送带(B2,B3)的总包(29)的由轻泻剂的F装置的端 从缓冲叠层(21)分离,VB4的速度,同时从缓冲叠层分离的(21)大于Vb2的更大,并且其中,所述输送带之间rderbands(B4)(B1,B2,B3,B4)的过渡(18,24)是 该移位在筑坝和/或单独的块(10)相对于所述传送方向(A)的分离。
    • 4. 发明专利
    • A METHOD AND A DEVICE FOR GENERATING FORMATTED TOTAL PACKAGES
    • CA2753783C
    • 2014-10-07
    • CA2753783
    • 2010-03-05
    • HOCHLAND SE
    • BIGGEL ANDREASHOFER STEFAN
    • B65B35/24B65B35/44B65G21/14B65G47/31
    • A method and a device for generation formatted total packages 29 comprising a defined number of adjoining equally sized individual pieces 10 formed in particular of a food product, whereby the individual pieces 10 are transported along the conveyor lines laying on conveyor belts, Whereby the individual pieces 10 on a first conveyor belt B1 are supplied at a mutual distance and at a speed V B1 to a second conveyor belt B2, B3, which forms a buffer line and which adjoins the first conveyor belt B1 in transport direction, whereby the individual pieces 10 at the beginning of the second conveyor belt B2, B3 are accumulated to a buffer stack 21 of adjoining individual pieces 10, whereby the buffer stack 21 is transported on the second conveyor belt B2, B3 at the speed V B2 which is lower than V B1, whereby at the end of the second conveyor belt B2, B3 total packages 29 are separated from the buffer stack 21 by means of a discharging conveyor belt B4 which, during the process of separating from the buffer stack 21, has a speed V B4 that is higher than V B2, and whereby transitions 18, 24 are located between the conveyor belts B1, B2, B3, B4 which, during the process of accumulating and/or separating of the individual pieces 10, are displaced in relation to the transport direction A.
    • 8. 发明申请
    • SELF-PROPELLED HARVESTERS WITH MODULAR CHASSIS STRUCTURE
    • 具有模块化底盘结构的自制式收割机
    • WO2012022643A3
    • 2012-07-19
    • PCT/EP2011063603
    • 2011-08-08
    • AGCO INT GMBHSCHANZ STEFANHOFER STEFAN
    • SCHANZ STEFANHOFER STEFAN
    • B62D21/12B62D21/18
    • A01D67/00B62D21/12B62D21/186
    • A chassis for a self-propelled harvester, the chassis having a lower frame section in the form of one or more longitudinally extending frame members which carry wheels and an engine and an upper frame section comprising two tower structures each detachably secured at their lower end to a respective longitudinally extending lower frame section member with transversely extending members extending between the tower structures. The tower structures are provided with support structure for an operator's cab and at least one part of a crop processing apparatus of the harvester. The support structure for the cab and/or a crop accelerator is provide at an intermediate height on the tower structures and support structure for a crop discharge spout is provided at the upper ends of the towers.
    • 一种用于自走式收割机的底架,底盘具有一个或多个纵向延伸的框架构件的下框架部分,该框架部分带有轮子和发动机,上部框架部分包括两个塔架结构,每个塔架结构在其下端可拆卸地固定到 相应的纵向延伸的下框架部件,其具有在塔架结构之间延伸的横向延伸部件。 塔架结构设置有用于操作者驾驶室的支撑结构以及收割机的作物处理设备的至少一部分。 驾驶室和/或作物加速器的支撑结构提供在塔架结构上的中间高度处,并且在塔的上端设置用于作物排出喷口的支撑结构。
    • 10. 发明专利
    • Method and device for producing formatted packagings
    • NZ594421A
    • 2013-12-20
    • NZ59442110
    • 2010-03-05
    • HOCHLAND SE
    • BIGGEL ANDREASHOFER STEFAN
    • B65B35/24B65B35/44B65B35/50B65G21/14B65G47/30B65G47/31B65G57/28
    • 594421 Disclosed is a method for generating formatted total packages comprising a defined number of adjoining equally sized individual pieces (10) formed of a food product such as unpackaged slices of processed cheese. The method includes the individual pieces (10) being transported along the conveyor lines laying on conveyor belts. The individual pieces (10) on a first conveyor belt (B1) are supplied at a mutual distance and at a speed VB1 to a second conveyor belt (B2, B3), which forms a buffer line and which adjoins the first conveyor belt (B1) in transport direction. The individual pieces (10) at the beginning of the second conveyor belt (B2, B3) are accumulated to a buffer stack of adjoining individual pieces (10). The buffer stack is transported on the second conveyor belt (B2, B3) at the speed VB2 which is lower than VB1, that at the end of the second conveyor belt (B2, B3) total packages are separated from the buffer stack (21) by means of a discharging conveyor belt (B4) which, during the process of separating from the buffer stack, has a speed VB4 that is higher than VB2. Transitions are located between the conveyor belts (B1, B2, B3, B4) which, during the process of accumulating and/or separating of the individual pieces (10), are displaced in relation to the transport direction (A). In order to separate a defined total package from the buffer stack the second displaceable transition is displaced opposite to the transport direction (A) until the defined total package has passed the transition. The second displaceable transition is subsequently displaced in transport direction (A) as soon as the total package of a defined size has passed the second displaceable transition.